Myelin basic protein cleaves cell adhesion molecule L1 and promotes neuritogenesis and cell survival
David Lutz1, Gabriele Loers, Ralf Kleene
1From the Zentrum für Molekulare Neurobiologie, Universitätsklinikum Hamburg-Eppendorf, Martinistrasse 52, 20246 Hamburg, Germany.
Insights
Myelin basic protein (MBP) binds to L1 and cleaves it to promote neurite outgrowth and neuronal survival. This interaction is crucial for nervous system development and function.
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- The cell adhesion molecule L1 is vital for nervous system development and function.
- L1 is a Lewis(x)-carrying glycoprotein involved in neural processes.
Purpose of the Study:
- To investigate the interaction between myelin basic protein (MBP) and L1.
- To elucidate the functional consequences of MBP binding and cleavage of L1.
Main Methods:
- Investigated MBP binding to L1 in a Lewis(x)-dependent manner.
- Demonstrated MBP cleavage of L1 using serine protease activity.
- Utilized MBP-deficient mice and specific antibodies/peptides to assess functional outcomes.
Main Results:
- MBP binds to L1 in a Lewis(x)-dependent manner.
- MBP cleaves L1 at Arg(687), releasing a fragment that promotes neurite outgrowth and neuronal survival.
- Reduced neurite outgrowth and survival were observed in MBP-deficient neurons or when the cleavage was inhibited.
Conclusions:
- MBP possesses novel serine protease activity towards L1.
- This interaction plays a significant role in promoting neurite outgrowth and neuronal survival.
- Findings reveal new functions for MBP in the nervous system.
Abstract:
The cell adhesion molecule L1 is a Lewis(x)-carrying glycoprotein that plays important roles in the developing and adult nervous system. Here we show that myelin basic protein (MBP) binds to L1 in a Lewis(x)-dependent manner. Furthermore, we demonstrate that MBP is released by murine cerebellar neurons as a sumoylated dynamin-containing protein upon L1 stimulation and that this MBP cleaves L1 as a serine protease in the L1 extracellular domain at Arg(687) yielding a transmembrane fragment that promotes neurite outgrowth and neuronal survival in cell culture. L1-induced neurite outgrowth and neuronal survival are reduced in MBP-deficient cerebellar neurons and in wild-type cerebellar neurons in the presence of an MBP antibody or L1 peptide containing the MBP cleavage site. Genetic ablation of MBP in shiverer mice and mutagenesis of the proteolytically active site in MBP or of the MBP cleavage site within L1 as well as serine protease inhibitors and an L1 peptide containing the MBP cleavage site abolish generation of the L1 fragment. Our findings provide evidence for novel functions of MBP in the nervous system.
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